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Land Rover suspension parts cover the full system that controls wheel motion, ride height and steering across the Defender, Discovery, Range Rover, Range Rover Sport, Freelander and Series ranges.
Air suspension is the standard or common fit across the modern independent-suspension range: Discovery 3, 4 and 5, Range Rover L322, L405, L460 and Velar, Range Rover Sport L320, L494 and L461, and the current Defender L663. Several of these were also offered with coil springs on lower specifications, so always confirm the fitted setup. Earlier air systems ran on the Range Rover P38A, the late Range Rover Classic LSE and self-levelling Discovery 2 models. The classic leaf-sprung Series, and the coil-sprung Classic Defender, Discovery 1, most Range Rover Classics and Freelander, use steel springs. Stocked items are dispatched from our Dutch warehouse network.
30mm alloy wheel spacer set designed to position the wheel further outward from the hub assembly. The spacers are manufactured from alloy and supp...
View full detailsWheel spacer kit fitted between the wheel hub and road wheel within the wheel mounting assembly. The spacers move the wheel mounting face outward...
View full detailsFlange Bolt, M12 - a hexagon-head bolt with an integral flange beneath the head. The flange spreads the clamping load over a wider bearing area an...
View full detailsSteering damper
Track Rod End with a right-hand thread, forming part of the steering linkage. The track rod end is the articulating ball joint that connects the t...
View full detailsRear Shock Absorber provides damping control on the rear axle for suspension set up with approximately 50 mm of additional travel. Twin-tube const...
View full detailsSteering Wheel Nut - the M14 hex retaining nut that secures the steering wheel to the steering column. It clamps the wheel onto the splined upper ...
View full detailsBolt 1/4" UNF x 2" is a hex-head set bolt with a 1/4-inch Unified National Fine (UNF) thread at 28 threads per inch and a 2-inch shank length. It ...
View full detailsSwivel pin housing Series
Drain/fill plug magnetic axle
Parabolic Leaf Spring for the rear axle, supplied as a matched pair. A parabolic spring uses fewer, tapered leaves than a conventional multi-leaf ...
View full detailsSwivel Pin Housing Kit rebuilds the upper pivot of the front axle swivel housing, where the steering knuckle articulates on the axle. This is the v...
View full detailsRear suspension shock absorber designed to control vertical movement of the axle and dampen spring oscillation within the suspension system. This...
View full detailsBolt - 1/2" UNF x 6-1/4", part of the front radius arm chassis mounting. The long shank passes through the radius arm front bush and the chassis m...
View full detailsU-Bolt for the rear leaf-spring suspension of long-wheelbase (LWB) models. The U-shaped bolt passes over the axle and clamps the rear leaf-spring ...
View full detailsRadius Arm Bush - Front for the front suspension radius arm assembly. This rubber bush is pressed into the forward end of the front radius arm and...
View full detailsFront Stub Axle for the front hub and swivel pin housing assembly at the front axle. The stub axle passes through the swivel pin housing and provi...
View full detailsSteering Ignition Lock Housing mounted on the steering column, combining the mechanical steering lock with the ignition switch mounting. It mechan...
View full detailsLocking Nut - an M12 self-locking nut used to secure suspension linkage fasteners. The locking feature resists loosening under the vibration and c...
View full detailsExtended Bump Stops are compression-travel limiters that sit between the axle and the chassis to cap suspension up-travel and cushion the axle agai...
View full detailsSteering box sector shaft seal kit for the steering system. This kit contains the sealing components required for the sector shaft assembly withi...
View full detailsDifferential Thrust Washer for the LT230 transfer box centre differential. It bears against the differential gears within the centre differential,...
View full detailsBolt - a threaded fastener used within the axle and suspension assembly. It secures front axle case mountings and rear suspension arm attachments,...
View full detailsRadius Arm Bush - front radius arm mounting bush at the chassis end of the arm. It locates and insulates the radius arm where it attaches to the ch...
View full detailsShock Absorber Bolt secures a shock absorber to its mounting in the suspension. The long shank passes through the damper eye and mounting bracket ...
View full detailsPlain Washer is a flat load-spreading washer used in the front axle hub and drive shaft assembly. It sits beneath the retaining fastener to distri...
View full detailsBolt - Front Radius Arm is the M16 x 100 mm grade 10.9 high-tensile bolt that secures the front radius arm within the front suspension linkage. It...
View full detailsBolt Secures the radius arm to the axle bracket within the radius arms & links assembly. Installed through the radius arm bush and axle mounti...
View full detailsShock Absorber for the rear suspension, within the Shock Absorbers & Springs assembly group. The damper mounts between the chassis and the rea...
View full detailsSpring Retaining Plate in the rear suspension, securing the upper end of the rear coil spring. It locates and clamps the top of the coil spring ag...
View full detailsAir Suspension Pin is a retaining pin within the air suspension assembly, securing the front air spring at its mounting.
This steering drop arm transmits movement from the steering box output shaft to the steering linkage, enabling directional control at the front axl...
View full detailsBracket tie bar for steering box
Spring Seat is the lower seat for the rear coil spring, forming the located surface that the base of the spring sits on. It positions and retains ...
View full detailsHose Clamp - 8-16mm A worm-drive hose clamp with an adjustable 8-16mm clamping range, used to secure a small-bore flexible hose onto its spigot or ...
View full detailsSkeleton Front Shock Absorber Turrets are the upper mounting towers for the front shock absorbers, bolting to the front chassis rails. The open tu...
View full detailsFront Coil Spring - Heavy Load, Standard Height (Terrafirma). These front coil springs are rated for heavy load while retaining the standard ride ...
View full detailsSteering Shaft is the intermediate steering shaft of the steering column assembly. It transmits steering input from the column down to the steerin...
View full detailsKit - Tie Rod Repair M20/M12
Differential Flange Mud Shield - a protective shield fitted at the differential pinion drive flange. It sits behind the drive flange, where the pr...
View full detailsDifferential Pinion Bearing Spacer used in the axle differential assembly across a broad range of Land Rover models from 1965 onwards. This spacer...
View full detailsTop Swivel Pin Bearing Spring, part of the front axle swivel pin housing assembly. The spring acts on the top swivel pin bearing to maintain beari...
View full detailsSnap Ring retaining the rubber dust boot on a track rod end within the steering linkage. A spring-steel ring that seats in the outer groove of the...
View full detailsShock Dropper - Rear - Pair: zinc-plated steel relocated rear shock absorber top mounts that lower the upper mounting point by 50mm. By relocating...
View full detailsHexagon Bolt - an M10 x 55 mm high-tensile bolt, property class 10.9, used to secure the rear stub axle and in the suspension top link, fulcrum and...
View full detailsNyloc Nut is an M16 nylon-insert self-locking nut that secures the front radius arm at its mounting within the front suspension. The nylon insert g...
View full detailsRear Hub Wheel Bearing for the rear hub assembly. It supports the rear wheel hub on the stub axle, allowing the wheel to rotate freely while carryi...
View full detailsHexagon Bolt - an M16 x 100 mm high-tensile bolt, property class 10.9, used to secure the front radius arm. The 10.9 grade provides the high clamp...
View full detailsSystem Overview
The suspension and steering system on a Land Rover or Range Rover does two jobs at once. It manages wheel motion across varied terrain, and it keeps the contact patch in the geometry the chassis was designed for. When either job slips, drivers notice it first through the steering wheel and through tyre wear patterns.
Vehicle use affects wear, but not in a fixed pattern. Heavy loads, towing, potholes, off-road contamination and unresolved air leaks all push wear into different parts. Model, suspension type, age and maintenance change the picture too, so diagnose by symptom rather than assuming a particular failure order.
This collection holds the replacement parts across Defender, Discovery, Range Rover, Freelander and Series models, with model-scoped fitment support where the system varies meaningfully between generations.
Shop by Part TypeThe suspension, steering and axle system breaks down into nine part groups. Jump straight to the category that matches your job, or read the system overview below if you are diagnosing by symptom.
Dampers, struts and off-road coilovers with fitting hardware.
Land Rover shock absorbers and dampersStandard, heavy-duty and lift springs with seats and isolators.
Land Rover coil springs and lift kitsAir springs, compressors and ride height sensors for EAS-equipped models.
Land Rover air suspension parts and compressorsRadius arms, control arms, wishbones and trailing links.
Land Rover suspension arms and control armsBush kits, poly bushes, anti-roll bar links and rubber mounts.
Land Rover suspension bushes and anti-roll bar kitsA-frame, control arm and drop link ball joints, boots and repair kits.
Land Rover ball joints and repair kitsTrack rod ends, tie rods, steering dampers, racks and PAS parts.
Land Rover steering components and track rodsHub assemblies, taper bearings, hub nuts and oil seals.
Land Rover wheel bearings and sealsSwivel kits, stub axles, half shafts and drive flanges.
Land Rover axle and swivel partsControl arms locate the wheel hub against the chassis and carry the bushes that absorb vibration and small geometry movement. On the double-wishbone front suspension layouts (Discovery 3 and 4, Range Rover L405 and L460, Range Rover Sport L320, L494 and L461), lower arm bush wear is a common issue. Drivers report a clunk during braking, during steering lock, or when the suspension loads under bumps. The Range Rover L322 uses a strut-type front instead, where the air strut, transverse link and compression link are the common service areas.
The decision when ordering is between pressed-bush replacement and a complete arm assembly. Pressed bushes cost less in parts but require the correct press equipment and a structurally sound original arm. An aged or corroded arm often justifies replacing the complete assembly on labour and reliability grounds.
Wheel bearing construction varies by model, axle, build and VIN. Many later independent-suspension models use a bolt-on hub assembly where the bearing and hub are renewed as one unit, but others use a sealed bearing pressed into the carrier, and the front and rear can differ on the same vehicle (the Freelander 2 is a good example). Older platforms such as the Series, Defender Classic, Discovery 1 and Range Rover Classic use serviceable opposed taper roller bearings that can be cleaned, re-greased and adjusted. Check how your bearing is supplied before ordering.
A failing hub or bearing typically presents as a hum that rises with road speed and changes character on a steering input. Where the vehicle uses a bolt-on unit, replacement is straightforward because the assembly unbolts from the upright; where the bearing is pressed into the carrier it needs pressing out and in. See the wheel bearings and seals collection for the full range.
The steering rack converts hand-wheel rotation into linear motion at the tie rod ends. Tie rod ends and inner ball joints wear gradually and can produce play, vague steering and uneven tyre wear before they produce noise. Rack-internal wear and seal leaks tend to appear as excess play found during alignment work, where it cannot be corrected by toe adjustment alone.
Bushes and ball joints can fail on their own, a torn boot, a seized joint or a perished bush is enough, but they often wear alongside the parts around them. Ordering a single ball joint without inspecting the wishbone bush, the anti-roll bar drop link and the opposite side is a common rework trigger. Inspect the adjacent parts while access is open and replace what is worn, scoped to one axle at a time.
Air SuspensionAir suspension is the most complex subsystem in this category and the highest-value replacement decision. It applies to:
The parts that most often need attention on an air system are the air springs and the compressor. Air springs perish and split at the fold points in the rubber bladder and start to leak. A compressor then overworks trying to keep up with that leak and eventually wears out, which is why an unresolved air leak so often takes the compressor with it. Air lines, the valve block and ride height sensors can also fault, though sensors and control electronics frequently last the life of the vehicle. Diagnose each part on its own rather than replacing to a fixed order.
For diagnosis depth on the L320 specifically, see the L320 air suspension fault guide. The blog covers symptom-to-component mapping; this page lists the parts.
Confirm whether your vehicle is on air or coil before ordering. Some Discovery 3 builds left the factory on coil springs, and aftermarket air-to-coil conversions are common and may already have been fitted, so the springs on the vehicle now may not match the original specification. Check from the VIN-linked build record or by looking at the spring at the wheel: an air spring is a tall rubber bladder, a coil is a steel spring.
Suspension parts are returned more often than most categories because fitment varies more than buyers expect. Five checks before ordering save the most labour:
Several parts share labour access, so when one is off it is worth inspecting and, if worn, renewing its neighbour in the same visit. This is about inspection and shared labour, not automatic replacement.
Access matters too. On some models the lower arm runs close to the brake hose and caliper fixings, so it is worth checking the nearby brake parts while access is open. Incorrect alignment after suspension work can also cause rapid or uneven tyre wear.
For owners replacing ball joints, the ball joint failure guide covers the test procedure and the visual checks before ordering replacements.
Buyer ConfidenceThese are the common mistakes behind returns and repeat workshop visits on suspension orders.
When ordering a control arm, check whether it comes with bushes fitted and whether the geometry matches the original. Aftermarket arms sometimes use different bush geometry from OEM, and mixing specifications across an axle can leave the car feeling slightly off even when nothing is worn, so keep the axle consistent.
Correct fitment by model, year and variant is the deciding factor on suspension orders. Land Rover and Range Rover models were produced with multiple suspension configurations across trim levels and markets, and the parts are rarely cross-compatible.
Budget Parts lists parts by model and variant. If the original build configuration is in doubt, the VIN can be used to confirm whether the vehicle left the factory on air or coil suspension, which bearing type, and which steering rack variant.
For fitment questions on a specific vehicle, contact the team with the VIN before ordering. Workshops and trade buyers can request volume pricing and account support, see our trade and volume discount policy.
Technical GuidesFour blog guides on Budget Parts cover the diagnostic and failure-pattern depth that this commercial collection does not. Use the relevant guide alongside the parts list to confirm what to order.
Visual and movement-based tests for worn ball joints across the Discovery and Range Rover range, with the clunk-on-lock pattern that can point to lower ball joint wear on the Discovery 3 and Discovery 4.
Land Rover ball joint symptoms, testing and replacementComponent-by-component breakdown of air spring, compressor and height sensor failure on the L320, with the order in which failures typically cascade.
Range Rover Sport L320 air suspension diagnosisAir suspension, electronics and ancillaries on the 2013 to 2022 L405. Useful for owners diagnosing multi-system faults where suspension is one of several contributors.
Range Rover L405 problems and fixesWheel bearing and rear trailing arm bush pattern specific to the L359 generation, with the typical mileage at which each appears.
Freelander 2 common faults and fixesCommon causes of knocking over uneven surfaces include worn lower ball joints, wishbone bushes or anti-roll bar drop links. A clunk that appears on steering lock can point to a lower ball joint, but it can also come from a CV joint, a track rod end, a top mount, a drop link, the steering stops or a loose fixing, so check play, boots and movement under load before ordering. The relevant parts are listed by model in this collection.
There is no fixed interval. As a broad aftermarket guide, air springs often last around 6 to 10 years or roughly 130,000 to 160,000 kilometres, but climate, use and how often the vehicle is left standing all change that. Leakage, cracking at the folds, a corner that settles overnight, or a compressor that runs longer than it used to are better signs to replace than mileage alone.
Not unless both show wear. Where the vehicle uses a bolt-on hub unit, the hub is renewed as a single unit per wheel; where the bearing is pressed into the carrier it is done individually, and the front and rear can differ on the same vehicle. Inspect the opposite side at the same labour visit, but do not replace it pre-emptively unless there is wear.
The Range Rover Sport L320 (2005 to 2013) came with four-corner air suspension as standard. Many have since been converted to coil springs with aftermarket kits, so the simplest check is the spring at the wheel: an air spring is a tall rubber bladder, a coil is a steel spring. The VIN-linked build record gives the original factory specification.
Check the alignment whenever you replace a geometry-setting part such as a control arm, tie rod end or wishbone, or whenever the repair disturbs the knuckle or the adjustment points. A tie rod replacement always needs it because it changes toe directly. A straightforward bolt-on hub swap that leaves the knuckle undisturbed does not by itself change alignment, but it is still worth a check.
Updated: 13 July 2026